School of Engineering
Showing 281-290 of 371 Results
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Serdar Selamet
Adjunct Lecturer, Civil and Environmental Engineering
BioProf. Serdar Selamet is an Adjunct Lecturer in Civil and Environmental Engineering at Stanford University and a Manager in Thermal Sciences at Exponent. Before joining Stanford, he served as an Associate Professor of Civil Engineering at Bogazici University in Istanbul, Turkey. His work focuses on structural fire engineering, wildfire engineering, steel structures, performance-based design, computational modeling, and multi-hazard resilience.
Dr. Selamet specializes in evaluating the behavior of buildings and infrastructure under fire conditions. His expertise includes heat-transfer and thermomechanical analysis, structural stability and critical-temperature assessment, passive fire protection, façade and cladding fires, compartment-fire dynamics, and the fire performance of steel and composite structures. He has led performance-based fire-engineering projects involving high-rise buildings, airports, industrial facilities, and structures containing hazardous materials.
As a licensed Professional Engineer (P.E.) and Certified Fire and Explosion Investigator (CFEI), Dr. Selamet conducts origin-and-cause investigations involving residential and commercial fires, explosions, and hazardous materials. His consulting experience also includes failure analysis of sprinklers, fire-rated assemblies, firestopping systems, and building façades. In wildfire engineering, he develops predictive models for vegetation ignition and assesses risks to infrastructure in the wildland–urban interface.
His computational expertise includes finite-element and thermomechanical modeling using Abaqus, OpenSees Fire, and SAFIR, as well as fire and smoke modeling using computational fluid dynamics and zone models such as OZone and CFAST. Dr. Selamet is an Editorial Board Member of Fire Safety Journal, co-leads the SFPE WUI Fire Research Work Group, and serves on several professional fire-protection and structural-engineering committees. -
Meghan Marjorie Shea
Postdoctoral Scholar, Civil and Environmental Engineering
BioMeghan is a postdoctoral scholar at Stanford University, where she studies how to best use environmental DNA (eDNA)—little bits of DNA left behind by organisms in their ecosystems—for marine biodiversity monitoring. Her interdisciplinary approach blends science & technology studies and ocean sciences, drawing on her dual training as a social scientist and engineer. Working from the archives to the laboratory to the field, she advances eDNA tools while interrogating their social context and epistemic implications. Prior to her postdoc, she received a PhD in the Emmett Interdisciplinary Program in Environment & Resources at Stanford, an MPhil in Nature, Society and Environmental Governance from Oxford as a Rhodes Scholar, and a BS in Environmental Systems Engineering from Stanford. When she's not thinking about environmental DNA, she loves cooking elaborate vegetarian meals, nurturing her house plants, and finding ways to spend as much time as possible on or near the ocean!
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Chungheon Shin
Research Engineer, Civil and Environmental Engineering
BioChungheon Shin is the Research Director of the Codiga Resource Recovery Center at Stanford University. His research advances sustainable water and environmental technologies through process intensification, environmental biotechnology, and resource recovery. By integrating biological and physicochemical processes with mechanistic and data-driven computational models, he develops engineering solutions that recover clean water, energy, and valuable resources. His work spans multiple scales, from fundamental reaction kinetics to pilot- and demonstration-scale systems, with a strong emphasis on translating research into real-world applications.
His current research focuses on three complementary areas: process intensification, resource recovery, and digital optimization of water infrastructure. He has led the development of the Staged Anaerobic Fluidized-bed Membrane Bioreactor (SAF-MBR), an energy-positive wastewater treatment technology that has advanced to demonstration scale, and is developing pilot-scale methane-to-protein technologies that convert waste methane into sustainable protein through efficient gas transfer and environmental biotechnology. His research also integrates mechanistic understanding with data-driven modeling to optimize biological treatment processes and accelerate the deployment of next-generation water technologies.
Dr. Shin received his Ph.D. in Environmental Engineering from Inha University in South Korea, where he developed the SAF-MBR under the supervision of Professor Jaehoe Bae and Professor Perry L. McCarty. He subsequently joined the Department of Civil and Environmental Engineering at Stanford University as a postdoctoral scholar under Professor Craig S. Criddle, where he expanded his research in environmental biotechnology, process intensification, and sustainable water infrastructure.